4.5 Article

Genetic analysis of daily physical activity using a mouse chromosome substitution strain

Related references

Note: Only part of the references are listed.
Article Behavioral Sciences

High-resolution genetic mapping of mammalian motor activity levels in mice

M. J. H. Kas et al.

GENES BRAIN AND BEHAVIOR (2009)

Article Endocrinology & Metabolism

Genetic influences on growth and body composition in mice: multilocus interactions

G. A. Ankra-Badu et al.

INTERNATIONAL JOURNAL OF OBESITY (2009)

Article Public, Environmental & Occupational Health

Genetic and environmental factors in familial clustering in physical activity

Andre F. Seabra et al.

EUROPEAN JOURNAL OF EPIDEMIOLOGY (2008)

Article Biochemistry & Molecular Biology

Exercise-induced promotion of hippocampal cell proliferation requires β-endorphin

M. Koehl et al.

FASEB JOURNAL (2008)

Article Cell Biology

Quantitative trait loci for physical activity traits in mice

J. Timothy Lightfoot et al.

PHYSIOLOGICAL GENOMICS (2008)

Article Neurosciences

Comparison of dopamine D1 and D5 receptor knockout mice for cocaine locomotor sensitization

Rose-Marie Karlsson et al.

PSYCHOPHARMACOLOGY (2008)

Article Multidisciplinary Sciences

A sequence-based variation map of 8.27 million SNPs in inbred mouse strains

Kelly A. Frazer et al.

NATURE (2007)

Article Physiology

Quantitative trait loci associated with maximal exercise endurance in mice

J. Timothy Lightfoot et al.

JOURNAL OF APPLIED PHYSIOLOGY (2007)

Article Behavioral Sciences

Effects of genetic background and environmental novelty on wheel running as a rewarding behaviour in mice

Leonie de Visser et al.

BEHAVIOURAL BRAIN RESEARCH (2007)

Article Cell Biology

Influence of genetic background on daily running-wheel activity differs with aging

MJ Turner et al.

PHYSIOLOGICAL GENOMICS (2005)

Article Multidisciplinary Sciences

Genetic dissection of complex traits with chromosome substitution strains of mice

JB Singer et al.

SCIENCE (2004)

Article Cell Biology

Genetic influence on daily wheel running activity level

JT Lightfoot et al.

PHYSIOLOGICAL GENOMICS (2004)

Article Psychology, Biological

Is dopamine required for natural reward?

CM Cannon et al.

PHYSIOLOGY & BEHAVIOR (2004)

Article Biochemistry & Molecular Biology

Regulation of muscle fiber type and running endurance by PPARδ

YX Wang et al.

PLOS BIOLOGY (2004)

Article Biochemical Research Methods

R/qtl: QTL mapping in experimental crosses

KW Broman et al.

BIOINFORMATICS (2003)

Article Behavioral Sciences

Dopamine phenotype and behaviour in animal models: in relation to attention deficit hyperactivity disorder

D Viggiano et al.

NEUROSCIENCE AND BIOBEHAVIORAL REVIEWS (2003)

Article Behavioral Sciences

Patterns of brain activity associated with variation in voluntary wheel-running behavior

JS Rhodes et al.

BEHAVIORAL NEUROSCIENCE (2003)

Review Medicine, Research & Experimental

Determinants affecting physical activity levels in animal models

JCL Tou et al.

EXPERIMENTAL BIOLOGY AND MEDICINE (2002)

Article Behavioral Sciences

Prior experience with wheel running products cross-tolerance to the rewarding effect of morphine

BT Lett et al.

PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR (2002)

Article Cardiac & Cardiovascular Systems

Physical activity and other risk factors in male twin-pairs discordant for coronary heart disease

J Kaprio et al.

ATHEROSCLEROSIS (2000)